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首页> 外文期刊>Forest Products Journal >A life cycle environmental and economic assessment of optimum value engineering in houses
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A life cycle environmental and economic assessment of optimum value engineering in houses

机译:房屋最佳价值工程的生命周期环境和经济评估

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摘要

Public concern that wood-frame construction overly stresses the forest resource has led some to advocate a reduction in the use of wood. Possible activity toward that objective includes total substitution of wood with alternative materials, a design choice already invalidated on an environmental basis by life cycle assessment (LCA). Another response has been the reinvigoration of the optimum value engineering (OVE) concept, also called advanced framing. This is a careful approach to wood design meantto reduce the volume of wood in a building, and to reduce waste. Advocates of OVE assume an environmental benefit from any wood reduction; however, OVE has never been scientifically established as environmentally preferable to conventional framing; literature on OVE has only quantified the cost savings in materials. This LCA study compared a best-practice Canadian house with one using up to 50 percent less wood, and found little or no environmental benefit; an important factor in these results was theneed to incorporate non-renewable products to replace the functionality of the removed wood. Next, a house that combined some elements of efficient framing with maximum use of renewable content (e.g., cellulose insulation in place of fiberglass, wood windows in place of aluminum windows, and wood siding in place of vinyl siding) was compared to the conventional house, and showed strong environmental benefits. These data provide a good argument for maintaining, not decreasing, the renewable content in ahouse, provided that public confidence in sustainable forestry in North America is continually improved.
机译:公众担心木结构建筑过分强调森林资源,导致一些人提倡减少木材的使用。为实现这一目标而可能开展的活动包括用替代材料完全替代木材,这种设计选择已在生命周期评估(LCA)的基础上在环境上作废。另一个回应是最佳价值工程(OVE)概念(也称为高级框架)的重新焕发活力。这是一种谨慎的木材设计方法,旨在减少建筑物中的木材量并减少浪费。 OVE的倡导者认为,减少木材消耗会带来环境效益;但是,OVE从未在科学上被确定为在环境上优于传统框架。有关OVE的文献仅量化了材料节省的成本。这项LCA研究将一间最佳实践的加拿大房屋与一所使用最多减少50%木材的房屋进行了比较,发现对环境的影响很小或没有。这些结果中的一个重要因素是需要结合不可再生的产品来替代被去除木材的功能。接下来,将一栋结合了有效构架元素和最大程度利用可再生能源的房屋(例如,纤维素绝缘代替玻璃纤维,木窗代替铝窗,木壁板代替乙烯基壁板)与传统房屋进行了比较。 ,并显示出强大的环境效益。这些数据为维持而不是减少房屋中的可再生能源含量提供了一个很好的论据,前提是公众对北美可持续林业的信心不断提高。

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